Optical cable reinforcing core connecting assembly

The design of the optical cable reinforcing core connection assembly solves the problem of loose connection between the optical cable reinforcing core and the internal structure of the optical cable, improves the mechanical stability of the optical cable, and facilitates the replacement and installation of the clamps, adapting to optical cables of different thicknesses.

CN224081864UActive Publication Date: 2026-04-03HUBEI CHANGDA OPTOELECTRONIC COMM MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The fiber optic cable's reinforcing core is not tightly connected to the cable's internal structure, resulting in insufficient mechanical stability under external forces, making it prone to deformation or damage.

Method used

An optical cable reinforcing core connection assembly was designed, including a clamping plate, a lead screw, a sliding frame, a moving block, and a connecting rod. By rotating the knob, the lead screw is driven to move the moving block upward, which pulls the sliding frame and the clamping plate closer together, tightly connecting the optical cables together. The modular clamping plate facilitates disassembly and installation.

Benefits of technology

It improves the mechanical stability of optical cables, prevents deformation or damage, and facilitates the replacement of clamps to accommodate optical cables of different thicknesses, thus expanding the range of applications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an optical cable reinforcing core connecting assembly, which belongs to the technical field of optical cable reinforcing cores and comprises a connecting column, the top of the connecting column is rotatably connected with a screw rod, the screw rod is in threaded connection with a moving block, two sides of the moving block are hinged with connecting rods, and the bottom ends of the connecting rods are hinged with sliding frames. An L-shaped plate is fixedly connected to the bottom of the sliding frame, a clamping plate is arranged on one side of the L-shaped plate, the clamping plate is of an arc surface design, a rotary knob is fixedly connected to the top end of the lead screw, and a plurality of grooves are formed in the rotary knob. According to the optical cable reinforcing core connecting assembly, through arrangement of the clamping plates, the screw rods, the sliding frames, the moving blocks and the connecting rods, the connecting assembly clamps an optical cable through mutual approaching of the two clamping plates, so that the internal structure of the optical cable and the reinforcing core can be tightly connected together; the reinforcing core can effectively transmit force to the whole optical cable structure, so that the mechanical stability of the optical cable is improved, and the optical cable is prevented from being deformed or damaged.
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Description

Technical Field

[0001] This utility model belongs to the field of optical cable reinforcing core technology, specifically an optical cable reinforcing core connection component. Background Technology

[0002] The fiber optic cable reinforcing core is a crucial component of the optical cable, typically located at its center. Its primary function is to enhance the cable's mechanical strength and tensile capacity, protecting the optical fiber from external forces. However, if the reinforcing core is not tightly integrated with the internal structure of the cable, it cannot effectively transmit force throughout the cable structure when subjected to external forces (such as tension, bending, or compression). This results in insufficient mechanical stability and makes the cable prone to deformation or damage. Therefore, a fiber optic cable reinforcing core connecting assembly is needed to tightly connect the reinforcing core to the internal structure of the cable and address this problem. Utility Model Content

[0003] To overcome the above-mentioned defects, this utility model provides an optical cable reinforcing core connection assembly, which solves the problem that when the optical cable reinforcing core is not tightly connected to the internal structure of the optical cable, the reinforcing core cannot effectively transmit the force to the entire optical cable structure when the optical cable is subjected to external forces (such as tension, bending, compression, etc.), resulting in insufficient mechanical stability of the optical cable and easy deformation or damage.

[0004] To achieve the above objectives, this utility model provides the following technical solution: an optical cable reinforcing core connection assembly, comprising a connecting post, a lead screw rotatably connected to the top of the connecting post, a movable block threadedly connected to the lead screw, connecting rods hinged to both sides of the movable block, a sliding frame hinged to the bottom of the connecting rod, an L-shaped plate fixedly connected to the bottom of the sliding frame, a clamping plate provided on one side of the L-shaped plate, the clamping plate having an arc surface design, a knob fixedly connected to the top of the lead screw, the knob having several grooves, and fixing plates fixedly connected to both ends of the connecting post, the two fixing plates being symmetrically arranged about the middle of the connecting post.

[0005] As a further embodiment of this utility model: the sliding frame is slidably connected to the connecting column, and there are two sliding frames, which are symmetrically arranged about the middle of the connecting column.

[0006] As a further embodiment of this utility model: a protective pad is fixedly connected to the clamp, and the protective pad is made of plastic.

[0007] As a further embodiment of this utility model: a limiting strip is fixedly connected to one side of the clamping plate, and the limiting strip has a threaded hole.

[0008] As a further embodiment of this utility model: a through hole is provided on the L-shaped plate, and a screw is provided inside the through hole, with the screw threaded into the threaded hole.

[0009] As a further embodiment of this utility model: a limiting groove is provided on the L-shaped plate, and the limiting strip is located inside the limiting groove.

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0011] This optical cable reinforcing core connection assembly, consisting of clamping plates, a lead screw, sliding frames, a moving block, and a connecting rod, allows for easy operation. The optical cable is placed between the two clamping plates, and rotating the knob rotates the lead screw. Since the moving block is threaded onto the lead screw, its rotation causes it to move upwards. The moving block, via the connecting rod, pulls the two sliding frames, the L-shaped plate, and the clamping plates closer together, thus clamping the optical cable. At this point, the internal structure of the optical cable is tightly connected to the reinforcing core, completing the connection. This connection assembly clamps the optical cable by bringing the two clamping plates closer together, ensuring a tight connection between the internal structure and the reinforcing core. When the optical cable is subjected to external force, the reinforcing core effectively transmits the force throughout the entire optical cable structure, improving its mechanical stability and preventing deformation or damage.

[0012] This optical cable reinforcing core connector assembly features a clamp, a limiting strip, threaded holes, screws, and a limiting groove. To remove the clamp, the screws are rotated to disengage from the threaded holes, releasing the clamp from its fixed position. To install the clamp, the limiting strip is placed in the limiting groove, and the threaded holes are aligned with the through holes. The screws are then placed in the through holes and tightened until they are fully inserted into the threaded holes, thus securing the clamp. The modular clamp design facilitates easy disassembly and installation, allowing for the replacement of clamps with different curvatures. This enables the assembly to clamp optical cables of varying thicknesses, expanding its application range. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0014] Figure 2 This is a schematic diagram of the structure of the present invention, showing the separation of the L-shaped plate and the clamping plate.

[0015] Figure 3 This is a three-dimensional structural diagram of the L-shaped plate of this utility model;

[0016] In the diagram: 1. Connecting post; 2. Lead screw; 3. Knob; 4. Moving block; 5. Connecting rod; 6. Sliding frame; 7. Fixing plate; 8. L-shaped plate; 9. Clamping plate; 10. Protective pad; 11. Limiting strip; 12. Threaded hole; 13. Screw; 14. Through hole; 15. Limiting groove. Detailed Implementation

[0017] The technical solution of this patent will be further described in detail below with reference to specific embodiments.

[0018] like Figure 1-3 As shown, this utility model provides a technical solution: an optical cable reinforcing core connection assembly, including a connecting post 1, a lead screw 2 rotatably connected to the top of the connecting post 1, a movable block 4 threadedly connected to the lead screw 2, connecting rods 5 hinged to both sides of the movable block 4, a through hole 14 opened on the L-shaped plate 8, and a screw 13 set inside the through hole 14. Because of the screw 13, the clamping plate 9 can be fixed by turning the screw 13, thereby improving the stability of the clamping plate 9. The screw 13 is threadedly connected inside the threaded hole 12.

[0019] A sliding frame 6 is hinged to the bottom of the connecting rod 5. The sliding frame 6 is slidably connected to the connecting post 1. There are two sliding frames 6, which are symmetrically arranged about the middle of the connecting post 1. An L-shaped plate 8 is fixedly connected to the bottom of the sliding frame 6. A clamping plate 9 is provided on one side of the L-shaped plate 8. The clamping plate 9 has an arc surface design. Because the clamping plate 9 has an arc surface design, the arc surface of the clamping plate 9 can fit with the optical cable, thereby expanding the clamping area and improving the clamping stability. In addition, the clamping plate 9 can provide a more uniform clamping force, avoiding damage to the optical cable due to uneven force.

[0020] A knob 3 is fixedly connected to the top of the lead screw 2. Several grooves are provided on the knob 3. The grooves on the knob 3 increase friction and make it easier for personnel to turn the knob 3, thus improving the ease of operation. Fixed plates 7 are fixedly connected to both ends of the connecting column 1. Limiting grooves 15 are provided on the L-shaped plate 8. The limiting grooves 15 play a role in initially limiting the limiting strip 11, which facilitates the quick alignment of the threaded hole 12 and the through hole 14, thereby improving work efficiency. The limiting strip 11 is located inside the limiting groove 15.

[0021] Two fixing plates 7 are symmetrically arranged about the middle of the connecting column 1. A protective pad 10 is fixedly connected to the clamp 9. The protective pad 10 is made of plastic. Because the protective pad 10 is made of plastic, it is relatively soft. When the clamp 9 clamps the optical cable, the protective pad 10 can protect the optical cable and prevent the clamp 9 from directly contacting the optical cable and causing scratches or damage. A limit strip 11 is fixedly connected to one side of the clamp 9. The limit strip 11 has a threaded hole 12.

[0022] The working principle of this utility model is as follows:

[0023] When in use, place the optical cable between the two clamps 9, turn the knob 3 to drive the lead screw 2 to rotate. Since the moving block 4 is threadedly connected to the lead screw 2, when the lead screw 2 rotates, the moving block 4 can move upward. The moving block 4 pulls the two sliding frames 6, the L-shaped plate 8 and the clamps 9 closer to each other through the connecting rod 5, thereby clamping the optical cable. At this time, the internal structure of the optical cable will be tightly connected with the reinforcing core, thus completing the connection of the reinforcing core.

[0024] When it is necessary to disassemble the clamping plate 9, rotate the screw 13 to disengage the screw 13 from the threaded hole 12, thereby releasing the clamping plate 9 from its fixed state and allowing it to be disassembled. When it is necessary to install the clamping plate 9, first place the limiting strip 11 inside the limiting groove 15 and align the threaded hole 12 with the through hole 14. Then, place the screw 13 inside the through hole 14 and tighten the screw 13 until it is screwed into the threaded hole 12, thereby fixing the clamping plate 9 and completing the installation of the clamping plate 9.

[0025] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0026] The preferred embodiments of this patent have been described in detail above. However, this patent is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of this patent.

Claims

1. An optical cable strength core connector assembly comprising a connector post (1), characterized in that: The connecting column (1) top rotationally connected with the lead screw (2), the lead screw (2) is threadedly connected with the moving block (4), the moving block (4) both sides are hingedly connected with the connecting rod (5), the connecting rod (5) bottom hingedly connected with the sliding frame (6), the sliding frame (6) bottom fixedly connected with the L-shaped plate (8), the L-shaped plate (8) one side is provided with the clamping plate (9), the clamping plate (9) is arc surface design, the lead screw (2) top fixedly connected with the knob (3), the knob (3) is provided with a plurality of recess, the connecting column (1) both ends are fixedly connected with the fixed plate (7), two fixed plate (7) about the middle part of the connecting column (1) symmetrically arranged.

2. An optical cable strength core connector assembly according to claim 1, wherein: The sliding frame (6) is slidably connected on the connecting column (1), the number of the sliding frame (6) is two, two sliding frame (6) about the middle part of the connecting column (1) symmetrically arranged.

3. An optical cable strength core connector assembly according to claim 1, wherein: The clamping plate (9) is fixedly connected with the protective pad (10), the protective pad (10) is plastic design.

4. An optical cable strength core connector assembly according to claim 1, wherein: The clamping plate (9) one side is fixedly connected with the limiting strip (11), the limiting strip (11) is provided with a threaded hole (12).

5. An optical cable strength core connector assembly according to claim 4, wherein: The L-shaped plate (8) is provided with a through hole (14), the through hole (14) is provided with a screw (13), the screw (13) is threadedly connected in the threaded hole (12).

6. An optical cable strength core connector assembly according to claim 4, wherein: The L-shaped plate (8) is provided with a limiting groove (15), the limiting strip (11) is located in the limiting groove (15).